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수소개질형 연료전지용 마이크로 개질기의 제작 및 성능분석
이홍렬(H. R. Lee),길재형(J. H. Gil),김성한(S. H. Kim),하지원(J. W. Ha),장재혁(J. H. Jang),Arunabha Kundu 한국정밀공학회 2006 한국정밀공학회 학술발표대회 논문집 Vol.2006 No.5월
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고온형 멤브레인을 사용한 메탄올 개질 연료전지의 개질기 일체형 평판 설계
김성한(Kim, Sung-Han),장재혁(Jang, Jae-Hyuk),길재형(Gil, Jae-Hyoung),이홍렬(Lee, Hong-Ryul),차혜연(Cha, Hye-Yeon),구보성(Ku, Bo-Sung),정창렬(Jung, Chang-Ryul),쿤두(Kundu, Arunaha),미씨(Miesse, Craig),오용수(Oh, Yong-Soo) 한국신재생에너지학회 2006 한국신재생에너지학회 학술대회논문집 Vol.2006 No.11
For a mobile application such as cellular phone, micro fuel cells should be extremely compact and thin. RHFC can be an alternative solution because RHFC gives higher power density than DMFC and does not need ahydrogen storage vessel In this paper, RHFC using methanol fuel is made as a novel planar design without a PROX. Both reformer and cell are made closely in a same plate to share the heater of reformer with the cell. The PBI membrane is used in the cell. The reason is that high temperature of reformer can cause a performance drop when perfluorosulfonic acid membrane such as Nafion is used such a high temperature operation also guarantees the higher CO tolerance to MEA catalyst. The cell is designed as an air-breathing type which the cathode of the cell is opened to the air. The commercial Cu/ZnO/Al2O3 steam reformer catalyst is packed in reformer channel. The active area of MEA is 11.9cm² and the peak power density was 27.5mW/cm².